Polyurethane in Automotive Filter Market Projected to Experience Major Revenue Boost till the end of 2022

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Rockville, US, 2018-Nov-05 — /EPR Network/ — Fact.MR’s comprehensive report on the global polyurethane in automotive filters market delivers critical insights on the various dynamics shaping the market during the forecast period, 2017-2026. In terms of growth, Fact.MR foresees a modest consumption of polyurethane in automotive filters considering its superior physical properties. Moreover, material innovations, technological developments, and stringent regulations are likely to have an impact on polyurethane’s application in automotive filters. Fact.MR study opines that the growth in consumption is largely on account of reducing emissions, increasing sustainability, and enhancing flame retardance.

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Polyurethane-based products, ideally suited for automotive filters, among other applications provides higher initial and overall collection efficiencies—necessary for reducing engine wear and subsequently, particulate matter. Fact.MR foresees rising standards for air filtration performance, particularly in Asia, considering increasing quantum of air-borne particulate matter observed in the region by various environment regulatory bodies.

Largely used as gaskets to bond papers considering Polyurethane’s striking adhesion and sealing properties, Fact.MR’ study indicates increased adoption in the foreseeable future, attributable to evolving automotive Air Induction Systems (AIS). A number of OEMs have rolled out global vehicle programs to incorporate the best practices pertaining to engine AIS. Fact.MR also envisages that increasing effectiveness of engine exhaust particulate and stringent evaporative emission regulations by various Governments to optimize existing parameters of the air induction operations, will remain a key factor adding mobility to polyurethane’s adoption in automotive filters.

Considering the rapid industrialization and its significant impact of the rising air pollution levels, researchers have recently developed a novel air filter- a polyurethane fiber mat, addressing major concerns pertaining to pressure drop and filtration efficiency in automotive. To enhance filtration efficiency and pressure drop effects, the researchers developed the nanofiber-based double layered air filter using mass production electrospinning, in varying concentrations of thermoplastic polyurethane. The results of the study indicates that nanofiber-based air filters with improved filtration performance can be achieved by adjusting the polymer application and electrospinning performing condition. New emerging studies pertaining to the use of polyurethane in automotive filters are projected to gather much prominence in the coming years to responding to filtration efficiency needs in light and heavy vehicles.

Stringency in Air Filter Standards Influencing Demand for Polyurethane Filters

In a bid to reduce the concentration of suspended air particles from vehicles, engine and component manufacturers of emerging nations are following suit of developed countries and increasingly incorporating advanced and effective filters. Polyurethane has emerged as a viable alternative owing to its open cell structure, resulting in lesser shape alternation while offering better compression sets. Polyurethane in automotive filters are being increasingly preferred over conventional variants on account of their low curing temperatures. The manufacture focus on increasing longevity and reducing total costs can also be addressed using polyurethane.

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Growing Penetration of Electric Vehicles Poses Tough Questions for Long-term Sustainability of Components Industry

The status quo that has long existed with the dominance of internal combustion engines (ICE) and the power belonging to OEMs, component manufacturers, and raw material providers, is expected to change in a significant way with the emergence of electric vehicles. Challenging the incumbents, the transformation from internal combustion engines to electric motors, will not just have an impact on the vehicle Bill of Materials (BOM), but will also result in drastic materials shifts. As the automotive industry witnesses the outgoing of powertrain components and most importantly, IC engines, use of polyurethane in engine filters is projected to dramatically reduce, changing the overall auto landscape.

Compliance to Ever-Evolving To Regulations A Challenge/Opportunity for Air Filter Designers

Growing environmental concerns coupled with stringent regulations demanding more efficient combustion from automotive engine manufacturers, is pushing for high-performance air filters to not only protect the health of passengers, but also that of pedestrians. Pedestrian protection regulations guiding component makers to develop air filters to fit in compact engine spaces is a challenge, but also an opportunity for parts manufacturers. Pedestrian safety regulations, implemented in European Union, has urged the component makers to design softer vehicle front and strategically placed components within the bonnet, including a minimum distance between the air filter housing and bonnet. Moreover, regulations pushing for engine management systems to be entirely placed on air filter housing posed more design challenges for component makers.

Competitor Insights – Global Polyurethane in Automotive Filters Market

Fact.MR has extensively analyzed the key players in global polyurethane in automotive filters market to study their key forward market strategies over the forecast period of 2017-2026. Key market players identified in the report on global polyurethane in automotive filters market Donaldson Company, Robert Bosch GmbH, Denso Corporation, MAHLE Gmbh, Valeo SA, Mann+Hummel GmbH, UFI FILTERS spa, and Freudenberg Filtration Technologies SE & Co. KG. Fact.MR predicts that material and design innovations resulting in new product development (NPD) will remain a key strategy defining the future course of the global polyurethane in automotive filters market. Moreover, stringent combustion regulations involving emission of particulate matter have induced the vehicle manufacturers to conduct extensive research and development apropos to efficient filtration systems and fluid dynamics.

Table of Content:

  1. Global Economic Outlook
  2. Global Polyurethane in Automotive Filters Market – Executive Summary
    2.3. Market Attractiveness
    2.4. Opportunity Analysis & Megatrends
  3. Global Polyurethane in Automotive Filters Market Overview
    3.1. Introduction
    3.1.1. Global Polyurethane in Automotive Filters Market Taxonomy
    3.1.2. Global Polyurethane in Automotive Filters Market Definition
    3.2. Global Polyurethane in Automotive Filters Market Size (US$ Mn), Volume (tons) and Forecast, 2012-2026
    3.2.1. Global Polyurethane in Automotive Filters Market Y-o-Y Growth
    3.3. Global Polyurethane in Automotive Filters Market Dynamics
    3.4. Automotive Filter Manufacturing Locations
    3.5. Manufacturing Capacities of Major Players for Automotive Filters
    3.6. Impact of Trends on Polyurethane used for Automotive Filters
    3.7. Electric Car Stock by Country, 2005-16 (thousands)
    3.8. Deployment Scenarios for the Stock of Electric Cars to 2030
    3.9. New electric car registrations in Top Countries
    3.10. Electric Vehicle Market Attractiveness
    3.11. New and Planned Electric Vehicle Manufacturing Facilities
    3.12. Diesel Scandal in Europe
    3.13. Penetration of EV’s in High Potential Automotive Markets
    3.14. Transition to Electric Drive
    3.15. Electric Vehicle Index (EVI) Score, for Selected Countries
    3.16. Policy and Regulatory Landscape for Different Regions
    3.17. Impact of Electric Vehicles on Polyurethane for Automotive Filter
    3.18. Motorization Rate, 2015
    3.19. World Motor Vehicle Production (Thousands of vehicles)
    3.20. Trade Analysis
    3.21. Region wise Trade Activity Outlook
    3.22. Echo Affect & Changes in Distribution
    3.23. Radar Screen for Strategic Priorities in Automotive Sector
    3.24. Investment Feasibility Matrix
    3.25. Delta Matrix (Impact of Relation between Filter type, Vehicle type and Region)
    3.26. Competitor Market Footprint Matrix
    3.27. Product Lifecycle
    3.28. PESTL Analysis
    3.29. Key Participants Market Presence (Intensity Map) By Region

Continued……………..

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